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  2. Archaea - Wikipedia

    en.wikipedia.org/wiki/Archaea

    They called these groups the Urkingdoms of Archaebacteria and Eubacteria, though other researchers treated them as kingdoms or subkingdoms. Woese and Fox gave the first evidence for Archaebacteria as a separate "line of descent": 1. lack of peptidoglycan in their cell walls, 2. two unusual coenzymes, 3. results of 16S ribosomal RNA gene sequencing.

  3. Euryarchaeota - Wikipedia

    en.wikipedia.org/wiki/Euryarchaeota

    Euryarchaeota (from Ancient Greek εὐρύς eurús, "broad, wide") is a kingdom of archaea. [3] Euryarchaeota are highly diverse and include methanogens, which produce methane and are often found in intestines; halobacteria, which survive extreme concentrations of salt; and some extremely thermophilic aerobes and anaerobes, which generally live at temperatures between 41 and 122 °C.

  4. Prokaryote - Wikipedia

    en.wikipedia.org/wiki/Prokaryote

    Bacteria and archaea reproduce through asexual reproduction, usually by binary fission. Genetic exchange and recombination occur by horizontal gene transfer , not involving replication . [ 13 ] DNA transfer between prokaryotic cells occurs in bacteria [ 14 ] and archaea.

  5. Eubacterium - Wikipedia

    en.wikipedia.org/wiki/Eubacterium

    They may either be motile or nonmotile. If motile, they have a flagellum. A typical flagellum consists of a basal body, filament, and hook. The long filament is the organ which helps eubacteria move. [citation needed] [citation needed]

  6. Bacteria - Wikipedia

    en.wikipedia.org/wiki/Bacteria

    However, molecular systematics showed prokaryotic life to consist of two separate domains, originally called Eubacteria and Archaebacteria, but now called Bacteria and Archaea that evolved independently from an ancient common ancestor. [5] The archaea and eukaryotes are more closely related to each other than either is to the bacteria.

  7. Methanogen - Wikipedia

    en.wikipedia.org/wiki/Methanogen

    However, they play a crucial role in maintaining gut balance by utilizing end products of bacterial fermentation, such as H 2, acetate, methanol, and methylamines. Recent extensive surveys of archaea presence in the animal gut, based on 16S rRNA analysis, have provided a comprehensive view of archaea diversity and abundance.

  8. Eukaryote - Wikipedia

    en.wikipedia.org/wiki/Eukaryote

    They constitute a major group of life forms alongside the two groups of prokaryotes: the Bacteria and the Archaea. Eukaryotes represent a small minority of the number of organisms, but given their generally much larger size, their collective global biomass is much larger than that of prokaryotes.

  9. Two-domain system - Wikipedia

    en.wikipedia.org/wiki/Two-domain_system

    With it they proposed the existence of four kingdoms, based on the structure and composition of the ribosomal subunits, namely Archaebacteria, Eubacteria, Eukaryote and Eocyta [19] Lake further analysed the rRNA sequences of the four groups and suggested that eukaryotes originated from eocytes, and not archaebacteria, as was generally assumed. [20]